Resistive field generation in intense proton beam interaction with solid targets
编号:185 访问权限:仅限参会人 更新:2024-04-23 00:54:27 浏览:119次 张贴报告

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摘要
The Brown–Preston–Singleton (BPS) stopping power model is added to our previously developed hybrid code to model ion beam–plasma interaction. Hybrid simulations show that both resistive field and ion scattering effects are important for proton beam transport in a solid target, in which they compete with each other. When the target is not completely ionized, the self-generated resistive field effect dominates over the ion scattering effect. However, when the target is completely ionized, this situation is reversed. Moreover, it is found that Ohmic heating is important for higher current densities and materials with high resistivity. The energy fraction deposited as Ohmic heating can be as high as 20%–30%. Typical ion divergences with half-angles of about \( {5^{\circ}-10^{\circ}}\)will modify the proton energy deposition substantially and should be taken into account.
 
关键词
ion transport,resistive field,hybrid simulation
报告人
WEIQUAN WANG
associate professor National University of Defense Technology

稿件作者
WEIQUAN WANG National University of Defense Technology
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    05月13日

    2024

    05月17日

    2024

  • 03月31日 2024

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  • 04月15日 2024

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冲击波物理与爆轰物理全国重点实验室
浙江大学物理学院
中国核学会脉冲功率技术及其应用分会
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